Search Results - "Stutz, Michael J."
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1
Effects of microreactor wall heat conduction on the reforming process of methane
Published in Chemical engineering science (01-12-2005)“…In this paper, the effect of wall conduction of an autothermal tubular methane microreformer is investigated numerically. It is found that the axial wall…”
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2
Optimization of methane reforming in a microreactor—effects of catalyst loading and geometry
Published in Chemical engineering science (01-06-2006)“…In this paper, the effect of the catalyst surface site density (catalyst amount) and reactor geometry on the reforming process of methane in a wall-coated,…”
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3
Optimum washcoat thickness of a monolith reactor for syngas production by partial oxidation of methane
Published in Chemical engineering science (01-04-2008)“…In this paper, syngas (hydrogen and carbon monoxide) production was investigated by a numerical model of an adiabatic monolithic reformer (e.g. for a micro…”
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4
A micro-solid oxide fuel cell system as battery replacement
Published in Journal of power sources (15-02-2008)“…The concept and the design of a micro-solid oxide fuel cell system is described and discussed. The system in this study is called the ONEBAT system and…”
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5
Syngas production from butane using a flame-made Rh/Ce0.5Zr0.5O2 catalyst
Published in Applied catalysis. B, Environmental (11-05-2007)“…The capability of flame-made Rh/Ce0.5Zr0.5O2 nanoparticles catalyzing the production of H2- and CO-rich syngas from butane was investigated for different Rh…”
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6
Fast and exergy efficient start-up of micro-solid oxide fuel cell systems by using the reformer or the post-combustor for start-up heating
Published in Journal of power sources (01-08-2008)“…The start-up process of a micro-solid oxide fuel cell system strongly influences its overall efficiency, especially for portable applications where a frequent…”
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7
Syngas production from butane using a flame-made Rh/Ce sub(0.5)Zr sub(0.5)O sub(2) catalyst
Published in Applied catalysis. B, Environmental (01-05-2007)“…The capability of flame-made Rh/Ce sub(0.5)Zr sub(0.5)O sub(2) nanoparticles catalyzing the production of H sub(2)- and CO-rich syngas from butane was…”
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